Rrp4 Dmel_CG3931

protein found in Drosophila melanogaster
Protein protein Q29813031
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Rrp4 Dmel_CG3931

Summary

Rrp4 Dmel_CG3931 is a protein[1].

Key Facts

  • Rrp4 Dmel_CG3931's instance of is recorded as protein[2].
  • Rrp4 Dmel_CG3931's UniProt protein ID is recorded as Q9W1M9[3].
  • Rrp4 Dmel_CG3931's part of is recorded as Nucleic acid-binding, OB-fold[4].
  • Rrp4 Dmel_CG3931's part of is recorded as Exosome complex RNA-binding protein 1/RRP40/RRP4[5].
  • Rrp4 Dmel_CG3931's part of is recorded as K Homology domain, type 1 superfamily[6].
  • Rrp4 Dmel_CG3931's part of is recorded as Exosome complex component, N-terminal domain, protein family[7].
  • Rrp4 Dmel_CG3931's part of is recorded as K Homology domain, type 1, protein family[8].
  • Rrp4 Dmel_CG3931's has part is recorded as K Homology domain, type 1[9].
  • Rrp4 Dmel_CG3931's has part is recorded as Exosome complex component, N-terminal domain[10].
  • Rrp4 Dmel_CG3931's RefSeq protein ID is recorded as NP_001286771[11].
  • Rrp4 Dmel_CG3931's RefSeq protein ID is recorded as NP_611807[12].
  • Rrp4 Dmel_CG3931's molecular function is recorded as RNA binding[13].
  • Rrp4 Dmel_CG3931's molecular function is recorded as hydrolase activity[14].
  • Rrp4 Dmel_CG3931's cell component is recorded as nuclear exosome (RNase complex)[15].
  • Rrp4 Dmel_CG3931's cell component is recorded as cytoplasmic exosome (RNase complex)[16].
  • Rrp4 Dmel_CG3931's cell component is recorded as exosome (RNase complex)[17].
  • Rrp4 Dmel_CG3931's cell component is recorded as nuclear lamina[18].
  • Rrp4 Dmel_CG3931's cell component is recorded as cytoplasm[19].
  • Rrp4 Dmel_CG3931's cell component is recorded as nuclear exosome (RNase complex)[20].
  • Rrp4 Dmel_CG3931's cell component is recorded as exosome (RNase complex)[21].
  • Rrp4 Dmel_CG3931's biological process is recorded as exonucleolytic trimming to generate mature 3'-end of 5.8S rRNA from tricistronic rRNA transcript (SSU-rRNA, 5.8S rRNA, LSU-rRNA)[22].
  • Rrp4 Dmel_CG3931's biological process is recorded as regulation of gene expression[23].
  • Rrp4 Dmel_CG3931's biological process is recorded as nuclear-transcribed mRNA catabolic process, exonucleolytic, 3'-5'[24].
  • Rrp4 Dmel_CG3931's biological process is recorded as U4 snRNA 3'-end processing[25].
  • Rrp4 Dmel_CG3931's biological process is recorded as exonucleolytic catabolism of deadenylated mRNA[26].

References

Programmatic citations — every numbered marker resolves to a verifiable graph row below.

Direct Wikidata claims

  1. [2] . Q905695. Retrieved . wikidata.org.
  2. [3] . Q905695. Retrieved . wikidata.org.
  3. [4] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  4. [5] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  5. [6] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  6. [7] . wikidata.org.
  7. [8] . wikidata.org.
  8. [9] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  9. [10] . InterPro Release 71.0. ebi.ac.uk. Provenance: wikidata.org.
  10. [11] . Q20641742. Retrieved . wikidata.org.
  11. [12] . Q20641742. Retrieved . wikidata.org.
  12. [13] . GOA. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  13. [14] . GOA. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  14. [15] . The RNA processing exosome is linked to elongating RNA polymerase II in Drosophila. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  15. [16] . Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  16. [17] . An efficient protein complex purification method for functional proteomics in higher eukaryotes. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  17. [18] . Differential distribution of exosome subunits at the nuclear lamina and in cytoplasmic foci.. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  18. [19] . Differential distribution of exosome subunits at the nuclear lamina and in cytoplasmic foci.. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  19. [20] . The RNA processing exosome is linked to elongating RNA polymerase II in Drosophila. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  20. [21] . An efficient protein complex purification method for functional proteomics in higher eukaryotes. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  21. [22] . Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  22. [23] . Genome-wide analysis reveals distinct substrate specificities of Rrp6, Dis3, and core exosome subunits. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  23. [24] . Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  24. [25] . Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Retrieved . ebi.ac.uk. Provenance: wikidata.org.
  25. [26] . Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium. Retrieved . ebi.ac.uk. Provenance: wikidata.org.

Class ancestry

  1. [1] . Wikidata. wikidata.org.

📑 Cite this page

Use these citations when quoting this entity in research, articles, AI prompts, or wherever provenance matters. We aggregate Wikidata + Wikipedia + authoritative open-data sources; the stitched, scored, cross-referenced view is what 4ort.xyz contributes.

APA 4ort.xyz Knowledge Graph. (2026). Rrp4 Dmel_CG3931. Retrieved May 3, 2026, from https://4ort.xyz/entity/rrp4-dmel-cg3931
MLA “Rrp4 Dmel_CG3931.” 4ort.xyz Knowledge Graph, 4ort.xyz, 3 May. 2026, https://4ort.xyz/entity/rrp4-dmel-cg3931.
BibTeX @misc{4ortxyz_rrp4-dmel-cg3931_2026, author = {{4ort.xyz Knowledge Graph}}, title = {{Rrp4 Dmel_CG3931}}, year = {2026}, url = {https://4ort.xyz/entity/rrp4-dmel-cg3931}, note = {Accessed: 2026-05-03}}
LLM prompt According to 4ort.xyz Knowledge Graph (aggregator of Wikidata, Wikipedia, and authoritative open-data sources): Rrp4 Dmel_CG3931 — https://4ort.xyz/entity/rrp4-dmel-cg3931 (retrieved 2026-05-03)

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